Department of Biological Sciences, Louisiana State University, Baton Rouge, LA 70803, United States.
Biophys Chem. 2011 Nov;159(1):188-93. doi: 10.1016/j.bpc.2011.06.008. Epub 2011 Jun 24.
Different DNA polymerases partition differently between replication and repair pathways. In this study we examine if two Pol I family polymerases from evolutionarily distant organisms also differ in their preferences for replication versus repair substrates. The DNA binding preferences of Klenow and Klentaq DNA polymerases, from Escherichia coli and Thermus aquaticus respectively, have been studied using a fluorescence competition binding assay. Klenow polymerase binds primed-template DNA (the replication substrate) with up to 50× higher affinity than it binds to nicked DNA, DNA with a 2 base single-stranded gap, blunt-ended DNA, or to a DNA end with a 3' overhang. In contrast, Klentaq binds all of these DNAs almost identically, indicating that Klenow has a stronger ability to discriminate between replication and repair substrates than Klentaq. In contrast, both polymerases bind mismatched primed-template and blunt-ended DNA tighter than they bind matched primed-template DNA, suggesting that these two proteins may share a similar mechanism to identify mismatched DNA, despite the fact that Klentaq has no proofreading ability. In addition, the presence or absence of 5'- or 3'-phosphates has slightly different effects on DNA binding by the two polymerases, but again reinforce Klenow's more effective substrate discrimination capability.
不同的 DNA 聚合酶在复制和修复途径之间的分配方式不同。在这项研究中,我们研究了来自进化上相距甚远的生物体的两种 Pol I 家族聚合酶是否在复制与修复底物的偏好上也存在差异。使用荧光竞争结合测定法研究了来自大肠杆菌的 Klenow 和来自水生栖热菌的 Klentaq DNA 聚合酶的 DNA 结合偏好性。Klenow 聚合酶与引物-模板 DNA(复制底物)的结合亲和力高达 50 倍,而与缺口 DNA、具有 2 个碱基单链缺口的 DNA、平端 DNA 或具有 3'突出端的 DNA 结合的亲和力则低得多。相比之下,Klentaq 几乎可以与所有这些 DNA 以相同的亲和力结合,这表明 Klenow 比 Klentaq 更能区分复制和修复底物。相比之下,两种聚合酶与错配引物-模板和平端 DNA 的结合都比与匹配引物-模板 DNA 的结合更紧密,这表明这两种蛋白质可能具有相似的机制来识别错配 DNA,尽管 Klentaq 没有校对能力。此外,5' - 或 3' - 磷酸基团的存在或不存在对两种聚合酶的 DNA 结合略有不同的影响,但再次增强了 Klenow 更有效的底物区分能力。